JP2012155235A - Liquid crystal module - Google Patents

Liquid crystal module Download PDF

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Publication number
JP2012155235A
JP2012155235A JP2011015950A JP2011015950A JP2012155235A JP 2012155235 A JP2012155235 A JP 2012155235A JP 2011015950 A JP2011015950 A JP 2011015950A JP 2011015950 A JP2011015950 A JP 2011015950A JP 2012155235 A JP2012155235 A JP 2012155235A
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liquid crystal
rear frame
crystal module
mounting flange
side plate
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Kodai Nakano
功大 中野
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Funai Electric Co Ltd
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Funai Electric Co Ltd
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Priority to JP2011015950A priority Critical patent/JP2012155235A/en
Priority to US13/359,175 priority patent/US20120194761A1/en
Publication of JP2012155235A publication Critical patent/JP2012155235A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • G02F1/133314Back frames
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F2201/00Constructional arrangements not provided for in groups G02F1/00 - G02F7/00
    • G02F2201/50Protective arrangements
    • G02F2201/503Arrangements improving the resistance to shock
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F2201/00Constructional arrangements not provided for in groups G02F1/00 - G02F7/00
    • G02F2201/54Arrangements for reducing warping-twist

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Mathematical Physics (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Liquid Crystal (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a liquid crystal module such that an attachment flange part of a rear frame is increased in strength and a height of attachment to a cabinet is not limited.SOLUTION: The liquid crystal module which has a light source arranged in a shallow box-shaped rear frame 1 made of a sheet metal and also has a liquid crystal panel arranged in an upper-end opening of the rear frame with four peripheral edges thereof surrounded with a bezel includes an attachment flange piece 1f bent outward at right angles at each of both ends of a side plate 1c along a long side of the rear frame 1, the attachment flange piece which has raised edges 1g, 1h for reinforcement at both its ends such that the raised edge 1h is bent at right angles and extends downward up to an end of an inner plate part 1j of the side plate 1c being formed by bending. The attachment flange piece 1f is increased in strength with the raised edges 1g, 1h for reinforcement, and bent outward at right angles to make the height of attachment to the cabinet unlimited.

Description

本発明は、薄型テレビ、パソコンその他の電子機器に組み込まれる液晶モジュールに関し、更に詳しくは、リアフレームの取付用フランジ部の強度を高めた液晶モジュールに関する。   The present invention relates to a liquid crystal module incorporated in a flat-screen TV, a personal computer, or other electronic equipment, and more particularly to a liquid crystal module in which the strength of a mounting flange portion of a rear frame is increased.

従来の一般的な液晶モジュールは、リアフレームの内部に光源を配置すると共に、リアフレームの上端開口に液晶パネルを配置し、その四周縁をベゼルで取り囲んだ概略構造を有している。リアフレームは板金を浅い箱形に曲げ加工したもので、その四隅には、液晶モジュールを電子機器のキャビネットに取付けるための取付用フランジ部が形成されている。   A conventional general liquid crystal module has a schematic structure in which a light source is disposed inside a rear frame, a liquid crystal panel is disposed in an upper end opening of the rear frame, and four peripheral edges thereof are surrounded by a bezel. The rear frame is formed by bending a sheet metal into a shallow box shape, and at its four corners, mounting flange portions for mounting the liquid crystal module to the cabinet of the electronic device are formed.

取付用フランジ部としては、例えば、図6に示すように、リアフレーム101の長辺に沿った側板102の上端フランジ部103の端部を絞り加工することによって、コーナーを挟む二方が開放する略方形の凹段状に形成された取付用フランジ部104などが知られており、この取付用フランジ部104の底部には止具挿通穴105が穿設されている。   As the mounting flange portion, for example, as shown in FIG. 6, two ends sandwiching the corner are opened by drawing the end portion of the upper end flange portion 103 of the side plate 102 along the long side of the rear frame 101. A mounting flange portion 104 formed in a substantially rectangular concave shape is known, and a stopper insertion hole 105 is formed in the bottom portion of the mounting flange portion 104.

また、取付用フランジ部ではないが、リアフレームの二重側板の外側板を水平に切り起こしてベゼル固定用の突片を形成し、この突片にスペーサを介して重ねたベゼルを止具で固定した液晶モジュール(特許文献1)なども知られている。   In addition, although it is not the mounting flange, the outer side plate of the double side plate of the rear frame is horizontally cut and raised to form a protruding piece for fixing the bezel, and the bezel overlapped with this protruding piece via a spacer with a stopper. A fixed liquid crystal module (Patent Document 1) is also known.

特開2009−176544号公報JP 2009-176544 A

しかしながら、図6に示す従来の取付用フランジ部104は、強度がでる絞り加工によって形成されているとはいうものの、取付用フランジ部104の二方が絞り加工されないで開放する略方形の凹段状に形成されているため、強度が充分とは言い難いものであった。それ故、この取付用フランジ部104は輸送時の振動や衝撃によって変形しやすく、大きく変形すると、液晶モジュールの組立作業やキャビネットへの取付作業が困難になり、また、液晶モジュールの組立時にも取付用フランジ部104が変形しやすいので、歩留まりが悪くコストアップを招くという問題があった。   However, although the conventional mounting flange portion 104 shown in FIG. 6 is formed by drawing to increase the strength, a substantially square concave step that is opened without drawing the two sides of the mounting flange portion 104. It was difficult to say that the strength was sufficient. Therefore, the mounting flange portion 104 is easily deformed by vibrations and shocks during transportation, and if it is greatly deformed, it becomes difficult to assemble the liquid crystal module and attach it to the cabinet. Since the flange portion 104 is easily deformed, there is a problem that the yield is poor and the cost is increased.

また、絞り加工で凹段状に形成される取付用フランジ部104は、止具挿通穴105を形成する底部までの深さ寸法を大きく設定することが難しく、深くても1cm程度が限界であるため、電子機器のキャビネットに対する液晶モジュールの取付け高さが制限されるという問題もあった。   In addition, it is difficult to set the depth dimension to the bottom part where the fastener insertion hole 105 is formed in the mounting flange part 104 formed in a concave step shape by drawing, and the depth is limited to about 1 cm at the maximum. For this reason, there is a problem in that the mounting height of the liquid crystal module with respect to the cabinet of the electronic device is limited.

一方、前記特許文献1のベゼル固定用の突片のように、リアフレームの二重側板の外側板を水平に切り起こして形成したものは、上記の絞り加工で形成した取付用フランジ部105よりも強度が弱く、更に変形し易いため、この切起しによる突片形成の技術を採用して取付用フランジ部を形成しても、上記の問題を解決することはできない。   On the other hand, like the protruding piece for fixing the bezel in Patent Document 1, the outer side plate of the double side plate of the rear frame is formed by horizontally cutting and raising it from the mounting flange portion 105 formed by the above drawing process. However, the above-mentioned problem cannot be solved even if the mounting flange portion is formed by employing the technique of forming the projecting piece by cutting and raising because the strength is weak and the shape is more easily deformed.

本発明は上記事情の下になされたもので、その解決しようとする課題は、リアフレームの取付用フランジ部(片)の強度を高めて変形を防止し、組立作業やキャビネットへの取付作業を容易にすると共に、歩留まりを高めて結果的にコストの低減を可能とし、あわせてキャビネットに対する取付け高さも制限されないようにした液晶モジュールを提供することにある。   The present invention has been made under the above circumstances, and the problem to be solved is to increase the strength of the mounting flange portion (piece) of the rear frame to prevent deformation, and to perform assembly work and mounting work to the cabinet. An object of the present invention is to provide a liquid crystal module that facilitates and increases the yield so that the cost can be reduced as a result, and the mounting height to the cabinet is not limited.

上記課題を解決するため、本発明に係る液晶モジュールは、板金製の浅い箱形のリアフレームの内部に光源を配置すると共に、リアフレームの上端開口に液晶パネルを配置して、その四周縁をベゼルで取り囲んだ液晶モジュールにおいて、リアフレームの長辺に沿った側板の両端部に、外方へ直角に折れ曲がる取付用フランジ片であって、その両側端に補強用の立上り縁を有し、一方の立上り縁が直角に折れ曲がって側板の端まで延びる取付用フランジ片を、曲げ加工によって形成したことを特徴とするものである。   In order to solve the above problems, a liquid crystal module according to the present invention has a light source disposed inside a shallow box-shaped rear frame made of sheet metal, a liquid crystal panel disposed at the upper end opening of the rear frame, and four peripheral edges thereof. In the liquid crystal module surrounded by the bezel, both ends of the side plate along the long side of the rear frame are mounting flange pieces that bend outward at a right angle, and have rising edges for reinforcement on both sides. The mounting flange piece that is bent at a right angle and extends to the end of the side plate is formed by bending.

本発明の液晶モジュールにおいては、リアフレームの短辺に沿った側板の両端部に切欠き部を設けることが好ましい。   In the liquid crystal module of the present invention, it is preferable to provide notches at both ends of the side plate along the short side of the rear frame.

本発明の液晶モジュールのように、リアフレームの長辺に沿った側板の両端部に、外方へ直角に折れ曲がる取付用フランジ片であって、その両側端に補強用の立上り縁を有し、一方の立上り縁が直角に折れ曲がって側板の端まで延びる取付用フランジ片を、曲げ加工によって形成すると、取付用フランジ片自体の強度が両側端の補強用の立上り縁によって大幅に向上すると共に、直角に折れ曲がって側板の端まで延びる一方の立上り縁によって取付用フランジ片の折曲げ部分の強度も大幅に向上する。従って、輸送時に振動や衝撃を受けても、取付用フランジ片自体が変形し難く、取付用フランジ片の折曲げ部分の角度も変化し難いので、液晶モジュールの組立作業やキャビネットへの取付作業を容易かつ正確に行うことができ、また、液晶モジュールの組立時にも取付用フランジ片の変形や角度変化が生じ難いので、歩留まりが良くなり、結果的にコストを低減することが可能となる。
また、上記のように直角に折れ曲がる取付用フランジ片は、その折曲げ位置を変えるだけで取付用フランジ片の高さ位置を自由に変更できるため、従来の絞り加工による取付用フランジ部を形成した場合のように、電子機器のキャビネットに対する液晶モジュールの取付け高さが制限されるという問題を解消することもできる。
Like the liquid crystal module of the present invention, both ends of the side plate along the long side of the rear frame are mounting flange pieces that bend outward at a right angle, and have rising edges for reinforcement on both side ends, If one of the rising edges is bent at a right angle and the mounting flange piece extending to the end of the side plate is formed by bending, the strength of the mounting flange piece itself is greatly improved by the reinforcing rising edges at both ends, and the right angle is increased. The strength of the bent portion of the mounting flange piece is greatly improved by the one rising edge that is bent to the end of the side plate. Therefore, even if it receives vibration or impact during transportation, the mounting flange piece itself is not easily deformed, and the angle of the bent part of the mounting flange piece is difficult to change. This can be performed easily and accurately, and deformation and angle change of the mounting flange piece are difficult to occur during the assembly of the liquid crystal module, so that the yield is improved and consequently the cost can be reduced.
In addition, the mounting flange piece that bends at right angles as described above can be freely changed in the height position of the mounting flange piece simply by changing the bending position, so that a mounting flange portion is formed by conventional drawing. As in the case, the problem that the mounting height of the liquid crystal module with respect to the cabinet of the electronic device is limited can be solved.

更に、リアフレームの短辺に沿った側板の両端部に切欠き部を設けたものは、リアフレームの長辺に沿った側板の両端部を曲げ加工して取付用フランジ片を形成する際に、該切欠き部を利用して容易に曲げ加工を行うことができる利点がある。   Further, in the case where notches are provided at both end portions of the side plate along the short side of the rear frame, when both end portions of the side plate along the long side of the rear frame are bent to form a mounting flange piece. There is an advantage that bending can be easily performed using the notch.

本発明の一実施形態に係る液晶モジュールの分解斜視図である。It is a disassembled perspective view of the liquid crystal module which concerns on one Embodiment of this invention. 同液晶モジュールの正面図である。It is a front view of the liquid crystal module. 図2のA−A線断面図である。It is the sectional view on the AA line of FIG. 図2のB−B線断面図である。FIG. 3 is a sectional view taken along line B-B in FIG. 2. 同液晶モジュールのリアフレームの部分斜視図である。It is a fragmentary perspective view of the rear frame of the liquid crystal module. 従来の液晶モジュールのリアフレームの部分斜視図である。It is a fragmentary perspective view of the rear frame of the conventional liquid crystal module.

以下、図面を参照して、本発明に係る液晶モジュールの実施形態を詳細に説明する。   Hereinafter, embodiments of a liquid crystal module according to the present invention will be described in detail with reference to the drawings.

図1〜図5に示す実施形態の液晶モジュールは薄型液晶テレビに組み込まれる直下ライト型の液晶モジュールであって、リアフレーム1、光反射シート2、U字状冷陰極管3、ランプホルダー4、ランプフレーム5、光学シート6a,6b、セルガイド7、液晶パネル8、ベゼル9a,9bなどの主要部品で構成されている。   The liquid crystal module of the embodiment shown in FIGS. 1 to 5 is a direct light type liquid crystal module incorporated in a thin liquid crystal television, and includes a rear frame 1, a light reflecting sheet 2, a U-shaped cold cathode tube 3, a lamp holder 4, The lamp frame 5, the optical sheets 6 a and 6 b, the cell guide 7, the liquid crystal panel 8, and the bezels 9 a and 9 b are composed of major components.

この液晶モジュールの全体構成を概説すると、リアフレーム1は板金を曲げ加工して製作された浅い箱型フレームであって、その内部には光反射シート2が設けられている。そして、この光反射シート2の上には、光源として複数本(この実施形態では2本)のU字状冷陰極管3が平行に配設されており、これらのU字状冷陰極管3は複数(この実施形態では2つ)のランプホルダー4で保持されている。これらのランプホルダー4は、図1に示すようにU字状冷陰極管3を嵌合保持する保持部4aが形成されたものであって、U字状冷陰極管3の中央部を保持するランプホルダー4には、光学シート6aを下方から支持して撓みを防止するポスト4bが形成されている。   An outline of the overall configuration of the liquid crystal module is as follows. The rear frame 1 is a shallow box-shaped frame manufactured by bending a sheet metal, and a light reflecting sheet 2 is provided therein. A plurality of U-shaped cold cathode tubes 3 (two in this embodiment) as light sources are arranged in parallel on the light reflecting sheet 2, and these U-shaped cold cathode tubes 3 are arranged in parallel. Is held by a plurality (two in this embodiment) of lamp holders 4. As shown in FIG. 1, these lamp holders 4 are formed with a holding portion 4 a for fitting and holding the U-shaped cold cathode tube 3, and hold the central portion of the U-shaped cold cathode tube 3. The lamp holder 4 is formed with a post 4b that supports the optical sheet 6a from below and prevents bending.

それぞれのU字状冷陰極管3の端部にはランプソケット3aが取付けられており、これらのランプソケット3aは、リアフレーム1の一方の短辺に沿った側板1a(この実施形態では右側の側板)に沿って底板1bに形成されたソケット嵌着用開口部(図には表れていない)に嵌着されている。そして、それぞれのランプソケット3aからU字状冷陰極管3のリード線3bがリアフレーム1の裏側へ引き出されている。   A lamp socket 3a is attached to the end of each U-shaped cold cathode tube 3, and these lamp sockets 3a are connected to a side plate 1a (in this embodiment, on the right side) along one short side. The side plate is fitted in a socket fitting opening (not shown) formed in the bottom plate 1b. And the lead wire 3b of the U-shaped cold cathode tube 3 is pulled out from the lamp socket 3a to the back side of the rear frame 1.

図2,図4に示すように、リアフレーム1の左右の短辺に沿って形成された側板1a,1aの内側には、合成樹脂製のランプフレーム5,5が取付けられている。このランプフレーム5は、天板部5aと前面傾斜板部5bと背板部5cとからなる中空フレームであって、このランプフレーム5でU字状冷陰極管3のランプソケット3aを取付けた両端部と、反対側の屈曲部を覆い隠すことによって、液晶パネル9の表示面の左右両側部に明るさのムラが生じないようにしている。そして、このランプフレーム5の天板部5aには、後述する光学シート6a,6bの端縁を挿入する凹溝部5dが形成されている。   As shown in FIGS. 2 and 4, lamp frames 5 and 5 made of synthetic resin are attached to the inside of the side plates 1 a and 1 a formed along the left and right short sides of the rear frame 1. The lamp frame 5 is a hollow frame comprising a top plate portion 5a, a front inclined plate portion 5b, and a back plate portion 5c, and both ends of the lamp frame 5 to which the lamp socket 3a of the U-shaped cold cathode tube 3 is attached. By concealing the bent portion and the bent portion on the opposite side, brightness unevenness is prevented from occurring on the left and right side portions of the display surface of the liquid crystal panel 9. The top plate portion 5a of the lamp frame 5 is formed with a concave groove portion 5d into which end edges of optical sheets 6a and 6b described later are inserted.

リアフレーム1の上端開口には、2枚の光学シート(光拡散シート)6a,6bが配置されており、この光学シート6a,6bの長辺沿いの端縁は、図3に示すように、リアフレーム1の長辺に形成された二重側板1c(ほぼ逆U字状に曲げ加工された二重側板)に載置されて、合成樹脂製のセルガイド7で押えられている。そして、光学シート6a,6bの短辺沿いの端縁は、図4に示すように、ランプフレーム5の天板部5aに形成された凹溝部5dに挿入されている。   Two optical sheets (light diffusion sheets) 6a and 6b are arranged at the upper end opening of the rear frame 1, and the edges along the long sides of the optical sheets 6a and 6b are as shown in FIG. It is placed on a double side plate 1c (a double side plate bent in a substantially inverted U shape) formed on the long side of the rear frame 1, and is held by a cell guide 7 made of synthetic resin. And the edge along the short side of optical sheet 6a, 6b is inserted in the ditch | groove part 5d formed in the top-plate part 5a of the lamp | ramp frame 5, as shown in FIG.

光学シート6a,6bの上方には液晶パネル8が配置されており、図3,図4に示すように、この液晶パネル8の四周端縁はセルガイド7とランプフレーム5の上面に載置されている。そして、図1,図2に示すように、板金製の長短4本のベゼル9a,9a,9b,9bが、液晶パネル8の四周端縁とリアフレーム1の四周の側板を囲むように方形枠状に連結され、ビスでリアフレーム1の二重側板1c,1cの上端フランジ部の両端部に固定されている。   A liquid crystal panel 8 is disposed above the optical sheets 6a and 6b, and the four peripheral edges of the liquid crystal panel 8 are placed on the top surfaces of the cell guide 7 and the lamp frame 5 as shown in FIGS. ing. As shown in FIGS. 1 and 2, a rectangular frame is formed so that four long and short bezels 9 a, 9 a, 9 b, 9 b made of sheet metal surround the four peripheral edges of the liquid crystal panel 8 and the four peripheral side plates of the rear frame 1. And is fixed to both ends of the upper end flange portion of the double side plates 1c, 1c of the rear frame 1 with screws.

図1に示すように、液晶パネル8の長辺には、ソースドライバICチップを搭載したチップオンフィルム8aを介してX−配線基板8bが接続されており、このX−配線基板8bは、図3に示すようにリアフレーム1の二重側板1cに取付けたセルガイド7に固定されている。また、液晶パネル8の短辺には、ゲートドライバICチップを搭載したチップオンフィルム8cを介してY−配線基板8d接続されており、このY−配線基板8dは、図示はしていないが、リアフレーム1の短辺に沿った側板1aに固定されている。   As shown in FIG. 1, an X-wiring board 8b is connected to the long side of the liquid crystal panel 8 via a chip-on film 8a on which a source driver IC chip is mounted. 3, the cell guide 7 is fixed to the double side plate 1 c of the rear frame 1. In addition, a Y-wiring board 8d is connected to the short side of the liquid crystal panel 8 via a chip-on film 8c on which a gate driver IC chip is mounted. This Y-wiring board 8d is not shown in the figure, It is fixed to a side plate 1 a along the short side of the rear frame 1.

図1,図5に示すように、リアフレーム1の長辺に沿った二重側板1cの両端部は、外板部1dと上端フランジ部1eが切り欠かれ、両端部に残った内板部1jの略上半分が曲げ加工により外方へ直角に折り曲げられて取付用フランジ片1fが形成されている。この取付用フランジ片1fは、組み立てた液晶モジュールを電子機器のキャビネットに取付けるためのフランジ片であって、該フランジ片1fの両側端には補強用の立上り縁1g,1hが曲げ加工で形成されており、一方の立上り縁1hは取付用フランジ片1fの折曲げ部分1iで直角に折れ曲がって、二重側板1cの内板部1jの端まで下降して延びている。また、この取付用フランジ片1fには止具挿通穴1kが形成されている。このような取付用フランジ片1fは、リアフレーム1の相対向する長辺に沿った二重側板1c,1cの内板部1jの両端部に一箇所ずつ、合計四箇所に形成されている。   As shown in FIG. 1 and FIG. 5, both end portions of the double side plate 1c along the long side of the rear frame 1 are cut out from the outer plate portion 1d and the upper end flange portion 1e, and the inner plate portions remaining at both end portions. The mounting flange piece 1f is formed by bending substantially the upper half of 1j outwardly at a right angle by bending. This mounting flange piece 1f is a flange piece for mounting the assembled liquid crystal module on the cabinet of the electronic device, and the rising edges 1g and 1h for reinforcement are formed by bending at both ends of the flange piece 1f. One rising edge 1h is bent at a right angle at the bent portion 1i of the mounting flange piece 1f, and extends downward to the end of the inner plate portion 1j of the double side plate 1c. Further, a fastener insertion hole 1k is formed in the mounting flange piece 1f. Such mounting flange pieces 1f are formed at four locations, one at each end of the inner plate portion 1j of the double side plates 1c, 1c along the opposing long sides of the rear frame 1.

上記の取付用フランジ片1fは、両側端に形成された立上り縁1g,1hによって取付用フランジ片1f自体の強度が大幅に高められており、かつ、直角に折れ曲がって内板部1jの端まで延びる一方の立上り縁1hによって取付用フランジ片1fの折曲げ部分1iの強度も大幅に高められている。そのため、振動や衝撃力をうけても、取付用フランジ片1f自体が変形し難く、折曲げ部分1iの角度(折曲げ角度)も変化し難くなっている。   In the mounting flange piece 1f, the strength of the mounting flange piece 1f itself is greatly enhanced by the rising edges 1g and 1h formed on both side ends, and it is bent at right angles to the end of the inner plate portion 1j. The strength of the bent portion 1i of the mounting flange piece 1f is greatly increased by the one rising edge 1h. For this reason, even when subjected to vibration or impact force, the mounting flange piece 1 f itself is not easily deformed, and the angle (bending angle) of the bent portion 1 i is also difficult to change.

取付用フランジ片1fの強度は、補強用の立上り縁1g,1hの高さ寸法が大きくなるほど向上するが、あまり高くなると、一方の立上り縁1hの曲げ加工がし辛くなるので、立上り縁1g,1hの高さ寸法は、リアフレーム1の材料となる板金の厚さ寸法の2〜5倍程度に設定することが望ましい。参考までに、立上り縁1g,1hの高さ寸法を上記の程度にすると、取付用フランジ片1fの強度は、従来の絞り加工による取付用フランジ部104の強度に比べて40%以上向上することが確認された。   The strength of the mounting flange piece 1f increases as the height of the rising edges 1g and 1h for reinforcement increases. However, if the height is too high, bending of one rising edge 1h becomes difficult, so the rising edge 1g, The height dimension of 1h is desirably set to about 2 to 5 times the thickness dimension of the sheet metal that is the material of the rear frame 1. For reference, if the height of the rising edges 1g and 1h is set to the above level, the strength of the mounting flange piece 1f should be improved by 40% or more compared to the strength of the mounting flange portion 104 by conventional drawing. Was confirmed.

また、図5に示すように、リアフレーム1の相対向する短辺に沿った側板1aの両端部には切欠き部1mが形成されている。斯かる切欠き部1mが形成されていると、切欠き部1mを利用して曲げ加工装置により取付用フランジ片1fの曲げ加工を容易に行うことができる利点があるので望ましい。   Moreover, as shown in FIG. 5, the notch 1m is formed in the both ends of the side plate 1a along the mutually opposing short side of the rear frame 1. As shown in FIG. If such a notch 1m is formed, it is desirable because there is an advantage that the mounting flange piece 1f can be easily bent by a bending apparatus using the notch 1m.

更に、両端が直角に曲がった短い方のベゼル9b,9bの両端コーナ部には、図1,図2に示すごとく、リアフレーム1の取付用フランジ片1fを避けるように凹入部9c,9cが形成されており、この凹入部9cに電子機器のフロントキャビネット裏面のボス部を嵌め込んで取付用フランジ片1fに重ね合わせると共に、取付用フランジ片1fの止具挿通穴1kからネジを該ボス部にねじ込むことによって、フロントキャビネットの開口部に液晶モジュールを取付けることができるようになっている。   Further, as shown in FIGS. 1 and 2, recessed portions 9c and 9c are provided at both corners of the short bezel 9b and 9b whose both ends are bent at right angles so as to avoid the mounting flange piece 1f of the rear frame 1. The boss portion on the back surface of the front cabinet of the electronic device is fitted into the recessed portion 9c and overlapped with the mounting flange piece 1f, and a screw is inserted from the fastener insertion hole 1k of the mounting flange piece 1f. The liquid crystal module can be attached to the opening of the front cabinet.

以上のような構成の液晶モジュールは、リアフレーム1の長辺に沿った二重側板1cの両端部に形成された取付用フランジ片1fが、単に外方へ直角に折れ曲がるだけのフランジ片ではなく、フランジ片1fの両側端に形成された立上り縁1g,1hによってフランジ片1f自体の強度が高められ、かつ、直角に折れ曲がって二重側板1cの内板部1jの端まで延びる一方の立上り縁1hによってフランジ片1fの折曲げ部分1iの強度も高められたものであるため、輸送時に振動や衝撃力を受けても、フランジ片1f自体が変形し難く、折曲げ部分1iの曲げ角度も変化し難い。そのため、液晶モジュールの組立作業やキャビネットへの取付作業を容易かつ正確に行うことができ、また、液晶モジュールの組立時においても取付用フランジ部1fの変形や曲げ角度の変化などが生じ難いので、歩留まりが良くなり、結果的にコストを低減することが可能となる。   The liquid crystal module configured as described above is not a flange piece in which the mounting flange pieces 1f formed at both ends of the double side plate 1c along the long side of the rear frame 1 are simply bent outward at a right angle. The rising edge 1g, 1h formed on both side ends of the flange piece 1f enhances the strength of the flange piece 1f itself and bends at right angles to extend to the end of the inner plate portion 1j of the double side plate 1c. Since the strength of the bent portion 1i of the flange piece 1f is increased by 1h, the flange piece 1f itself is not easily deformed even when subjected to vibration or impact force during transportation, and the bending angle of the bent portion 1i also changes. It is hard to do. Therefore, the assembly work of the liquid crystal module and the attachment work to the cabinet can be performed easily and accurately, and the deformation of the mounting flange portion 1f and the change of the bending angle are difficult to occur during the assembly of the liquid crystal module. The yield is improved, and as a result, the cost can be reduced.

また、上記のように直角に折れ曲がる取付用フランジ片1fは、その折曲げ部分1iの位置を変えるだけで取付用フランジ片1fの高さ位置を自由に変更できるため、従来の絞り加工による取付用フランジ部104のように、電子機器のキャビネットに対する液晶モジュールの取付け高さが制限されるという問題を解消することもできる。   Further, the mounting flange piece 1f bent at a right angle as described above can be freely changed in the height position of the mounting flange piece 1f only by changing the position of the bent portion 1i. The problem that the mounting height of the liquid crystal module with respect to the cabinet of the electronic device is limited like the flange portion 104 can be solved.

1 リアフレーム
1a リアフレームの短辺に沿った側板
1c リアフレームの長辺に沿った側板(二重側板)
1f 取付用フランジ片
1g,1h 取付用フランジ片の両側端の補強用の立上り縁
1h 直角に折れ曲がって側板の端まで延びる一方の立上り縁
1j 二重側板の内板部
1k 止具挿通穴
1m 切欠き部
2 光反射シート
3 線状光源(U字状冷陰極管)
5 ランプフレーム
6a,6b 光学シート
8 液晶パネル
9a,9b ベゼル
1 Rear frame 1a Side plate along the short side of the rear frame 1c Side plate along the long side of the rear frame (double side plate)
1f Mounting flange piece 1g, 1h Reinforcing rising edge on both ends of the mounting flange piece 1h One rising edge that bends at right angles and extends to the end of the side plate 1j Inner plate portion of double side plate 1k Stopper insertion hole 1m Cutting Notch 2 Light reflecting sheet 3 Linear light source (U-shaped cold cathode tube)
5 Lamp frame 6a, 6b Optical sheet 8 Liquid crystal panel 9a, 9b Bezel

Claims (2)

板金製の浅い箱形のリアフレームの内部に光源を配置すると共に、リアフレームの上端開口に液晶パネルを配置して、その四周縁をベゼルで取り囲んだ液晶モジュールにおいて、
リアフレームの長辺に沿った側板の両端部に、外方へ直角に折れ曲がる取付用フランジ片であって、その両側端に補強用の立上り縁を有し、一方の立上り縁が直角に折れ曲がって側板の端まで延びる取付用フランジ片を、曲げ加工によって形成したことを特徴とする液晶モジュール。
In the liquid crystal module in which the light source is arranged inside the shallow box-shaped rear frame made of sheet metal, the liquid crystal panel is arranged in the upper end opening of the rear frame, and the four peripheral edges are surrounded by the bezel,
It is a mounting flange piece that bends outward at a right angle at both ends of the side plate along the long side of the rear frame, and has a rising edge for reinforcement at both ends, and one rising edge is bent at a right angle. A liquid crystal module, wherein a mounting flange piece extending to an end of a side plate is formed by bending.
リアフレームの短辺に沿った側板の両端部に切欠き部を設けたことを特徴とする請求項1に記載の液晶モジュール。   The liquid crystal module according to claim 1, wherein notches are provided at both ends of the side plate along the short side of the rear frame.
JP2011015950A 2011-01-28 2011-01-28 Liquid crystal module Pending JP2012155235A (en)

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JP2018167817A (en) * 2017-03-30 2018-11-01 テイ・エス テック株式会社 Support structure for vehicle seat
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